Microorganisms in nature are constantly subjected to a limited availability of resources and experience repeated starvation and nutrition. Therefore, microbial life may evolve for both growth fitness and sustainability. By contrast, experimental evolution, as a powerful approach to investigate microbial evolutionary strategies, often targets the increased growth fitness in controlled, steady-state conditions. Here, we address evolutionary changes balanced between growth and maintenance while taking nutritional fluctuations into account. We performed a 290-day-long evolution experiment with a histidine-requiring Escherichia coli strain that encountered repeated histidine-rich and histidine-starved conditions. The cells that experienced seven...
Bacterial survival requires adaptation to different environmental perturbations such as exposure to ...
Bacteria regulate their cellular resource allocation to enable fast growth-adaptation to a variety o...
Genome size is determined during evolution, but it can also be altered by genetic engineering in lab...
<div><p>Microorganisms in nature are constantly subjected to a limited availability of resources and...
Bacteria regulate their cellular resource allocation to enable fast growth-adaptation to a variety o...
The study of adaptive microbial evolution in the laboratory can illuminate the genetic mechanisms of...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
<div><p>Evolutionary adaptation to a constant environment is often accompanied by specialization and...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Stress response mechanisms in bacteria helps them sustain stressful and competitive environments cau...
<p>(<b>A</b>) The change in utilized transcriptome fraction of strains independently evolved in gluc...
Bacteria frequently lose biosynthetic genes, thus making them dependent on an environmental uptake o...
Nongenetic phenotypic variation can either speed up or slow down adaptive evolution. We show that it...
ABSTRACT Many nonsporulating bacterial species can survive for years within exhausted growth media i...
The molecular mechanisms of adaptation of Escherichia coli to a daily alternation between growth con...
Bacterial survival requires adaptation to different environmental perturbations such as exposure to ...
Bacteria regulate their cellular resource allocation to enable fast growth-adaptation to a variety o...
Genome size is determined during evolution, but it can also be altered by genetic engineering in lab...
<div><p>Microorganisms in nature are constantly subjected to a limited availability of resources and...
Bacteria regulate their cellular resource allocation to enable fast growth-adaptation to a variety o...
The study of adaptive microbial evolution in the laboratory can illuminate the genetic mechanisms of...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
<div><p>Evolutionary adaptation to a constant environment is often accompanied by specialization and...
Evolutionary adaptation to a constant environment is often accompanied by specialization and a reduc...
Stress response mechanisms in bacteria helps them sustain stressful and competitive environments cau...
<p>(<b>A</b>) The change in utilized transcriptome fraction of strains independently evolved in gluc...
Bacteria frequently lose biosynthetic genes, thus making them dependent on an environmental uptake o...
Nongenetic phenotypic variation can either speed up or slow down adaptive evolution. We show that it...
ABSTRACT Many nonsporulating bacterial species can survive for years within exhausted growth media i...
The molecular mechanisms of adaptation of Escherichia coli to a daily alternation between growth con...
Bacterial survival requires adaptation to different environmental perturbations such as exposure to ...
Bacteria regulate their cellular resource allocation to enable fast growth-adaptation to a variety o...
Genome size is determined during evolution, but it can also be altered by genetic engineering in lab...